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[" The radius of the second Bohr orbit for hydrogen atom is: "],[" (Planck's Const."h=6.6262times10^(-34)" Js; mass of electron "=9.1091times10^(-31)" kg; charge of electron "],[e=1.60210times10^(-19)" C; permittivity of vacuum "epsilon_(0)=8.854185times10^(-12)kg^(-1)m^(-3)A^(2)" ) "],[" (1) "4.76A],[" (3) "2.12A]

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The radius of the second Bohr orbit for hydrogen atom is : (Planck's constant, h = 6.6262 xx 10^(-34) Js , mass of electron = 9.1091 xx 10^(-31) kg , charge of electron e = 1.60210 xx 10^(-19) C , permittivity of vaccum in_0 = 8.854185 xx 10^(-12) kg^(-1) m^(-3) A^2)

The radius of the second Bohr orbit for hydrogen atom is : (Plank'c const. h = 6.6262 xx 10^(-34) Js , mass electron = 9.1091 xx 10^(-31) Kg , charge of electron e = 1.60210 xx 10^(-19) , permittivity of vaccum in_(0) = 8.854185 xx 10^(-12) kg^(-1) m^(-3) A^(2))

The radius of the second Bohr orbit for hydrogen atom is [Planck's constant (h)=6.6262xx10^(-34)* Js , mass of electron= 9.1091xx10^(-31)kg , charge of electron =1.60210xx10^(-19)C , permittivity of vacuum (in_(0))=8.854185xx10^(-12)kg^(-1)*m^(-3)*A^(2) ]-

The radius of the second Bohr orbit for hydrogen atom is [Planck's constant (h)=6.6262xx10^(-34)*s , mass of electron= 9.1091xx10^(-31)kg , charge of electron =1.60210xx10^(-19)C , permittivity of vacuum (in_(0))=8.854185xx10^(-12)kg^(-1)*m^(-3)*A^(2) ]-

The radius of the second Bohr orbit for hydrogen atom is________. [Plank's constant, h = 6.6262 xx 10^-34 Js mass of electron = 9.109 xx 10^-31 kg charge on electron, e = 1.602 xx 10^-19 C]